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裂殖酵母中mRNA的去帽反应需要Dcp1:其在从酵母到人类的不同物种中的特性研究。

Decapping reaction of mRNA requires Dcp1 in fission yeast: its characterization in different species from yeast to human.

作者信息

Sakuno Takeshi, Araki Yasuhiro, Ohya Yuriko, Kofuji Satoshi, Takahashi Shinya, Hoshino Shin-ichi, Katada Toshiaki

机构信息

Department of Physiological Chemistry, Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Biochem. 2004 Dec;136(6):805-12. doi: 10.1093/jb/mvh190.

Abstract

Cleavage of the 5'-cap structure is involved in the major 5'-to-3' and nonsense-mediated mRNA decay pathways, and the protein complex consisting of Dcp1 and Dcp2 has been identified as the species responsible for the decapping reaction in Saccharomyces cerevisiae and human. Although in vitro studies indicate that Dcp2 is catalytically an active component, the role of Dcp1 in the decapping reaction remains to be explored in organisms other than budding yeast. To elucidate the Dcp1-dependent decapping mechanisms, we identified the homologues of S. cerevisiae Dcp1 (ScDcp1) in higher eukaryotes and analyzed their functions in the different species. The phenotypes of slow growth and mRNA stabilization induced by Scdcp1-gene disruption in budding yeast could be suppressed by the Shizosaccharomyces pombe SpDcp1 but not by the human homologue hDcp1. In contrast, the same phenotypes caused by Spdcp1-gene disruption in fission yeast were effectively complemented by hDcp1 and its partial sequence comparable to SpDcp1. These results indicate that not only Dcp2 but also Dcp1 plays an indispensable role in mRNA-decay pathway and that the characteristics of Dcp1-dependent decapping reaction in fission yeast hold an intermediate position in the evolution of mRNA-decay machinery from budding yeast to mammals.

摘要

5'-帽结构的切割参与了主要的5'-至-3'和无义介导的mRNA降解途径,并且由Dcp1和Dcp2组成的蛋白质复合物已被确定为在酿酒酵母和人类中负责去帽反应的物质。尽管体外研究表明Dcp2是催化活性成分,但在除芽殖酵母以外的生物体中,Dcp1在去帽反应中的作用仍有待探索。为了阐明依赖Dcp1的去帽机制,我们在高等真核生物中鉴定了酿酒酵母Dcp1(ScDcp1)的同源物,并分析了它们在不同物种中的功能。芽殖酵母中Scdcp1基因破坏诱导的生长缓慢和mRNA稳定化的表型可以被粟酒裂殖酵母SpDcp1抑制,但不能被人类同源物hDcp1抑制。相反,裂殖酵母中Spdcp1基因破坏引起的相同表型被hDcp1及其与SpDcp1相当的部分序列有效互补。这些结果表明,不仅Dcp2而且Dcp1在mRNA降解途径中都起着不可或缺的作用,并且裂殖酵母中依赖Dcp1的去帽反应的特征在从芽殖酵母到哺乳动物的mRNA降解机制的进化中处于中间位置。

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